Affiliation:
1. Berliner Hochschule für Technik Department of Physics Luxemburger Straße 10 13353 Berlin Germany
2. The College of New Jersey Department of Physics 2000 Pennington Road Ewing NJ 08628 USA
3. The College of New Jersey Department of Chemistry 2000 Pennington Road Ewing NJ 08628 USA
Abstract
AbstractThin film supramolecular azopolymers support the all‐optical generation of dynamic surface microstructures. Using a spatial light modulator (SLM) illuminated at 488 nm, structured polarized light drives surface waves of sinusoidal profile with periods 700 nm–5 µm at speeds up to 1 µm s−1. Multiple regions on the film surface within the SLM focal plane can be independently set into motion, each with unique period, speed, amplitude, and propagation direction. The underlying mechanism is the photomechanical response of the azopolymer, which is more commonly exploited for the fabrication of static surface microstructures. Hydrogen‐bonded systems such as the supramolecular system described here are particularly advantageous due to their facile fabrication from commercially available components. In addition to applications in dynamic diffractive optics, this programmable system for optical surface waves is well‐suited for studies in nanoparticle manipulation, as well as in bioengineering as a reconfigurable surface template for directed cell growth.
Funder
National Science Foundation
Division of Electrical, Communications and Cyber Systems
Division of Materials Research
Subject
Atomic and Molecular Physics, and Optics,Electronic, Optical and Magnetic Materials
Cited by
7 articles.
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